Dharmveer Agarwal, Ajay D. Thakur, Atul C. Thakur

2022.6.28Journal of Micro and Bio Robotics

DOI: 10.1007/s12213-022-00151-4

tlooto Summary

The developed system can be utilised to study the useful properties of large microscopic biological objects in an ambient fluid-flow environment and has tremendous scope for applications in key areas including soft-matter science, cell biology and cancer research.

Abstract

Abstract is not available.

Citation format

AGARWAL, Dharmveer; THAKUR, Ajay D.; THAKUR, Atul C. Magnetic microbot-based micromanipulation of surrogate biological objects in fluidic channels. Journal of Micro and Bio Robotics, 2022, 19: 21–35.